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神经和心脏节律的振荡耦合。

Oscillatory Coupling Between Neural and Cardiac Rhythms.

机构信息

Department of Psychology, University of California, Los Angeles.

Department of Psychology, University of Konstanz.

出版信息

Psychol Sci. 2024 May;35(5):517-528. doi: 10.1177/09567976241235932. Epub 2024 Apr 3.

Abstract

Oscillations serve a critical role in organizing biological systems. In the brain, oscillatory coupling is a fundamental mechanism of communication. The possibility that neural oscillations interact directly with slower physiological rhythms (e.g., heart rate, respiration) is largely unexplored and may have important implications for psychological functioning. Oscillations in heart rate, an aspect of heart rate variability (HRV), show remarkably robust associations with psychological health. Mather and Thayer proposed coupling between high-frequency HRV (HF-HRV) and neural oscillations as a mechanism that partially accounts for such relationships. We tested this hypothesis by measuring phase-amplitude coupling between HF-HRV and neural oscillations in 37 healthy adults at rest. Robust coupling was detected in all frequency bands. Granger causality analyses indicated stronger heart-to-brain than brain-to-heart effects in all frequency bands except gamma. These findings suggest that cardiac rhythms play a causal role in modulating neural oscillations, which may have important implications for mental health.

摘要

振荡在组织生物系统中起着关键作用。在大脑中,振荡耦合是一种基本的通信机制。神经振荡与较慢的生理节律(如心率、呼吸)直接相互作用的可能性在很大程度上尚未被探索,这可能对心理功能有重要影响。心率的振荡,即心率变异性(HRV)的一个方面,与心理健康有着显著的关联。Mather 和 Thayer 提出,将高频 HRV(HF-HRV)与神经振荡耦合作为部分解释这种关系的机制。我们通过在 37 名健康成年人休息时测量 HF-HRV 和神经振荡之间的相位-幅度耦合来检验这一假设。在所有频段都检测到了稳健的耦合。格兰杰因果分析表明,除了伽马波段外,在所有频段中,心至脑的影响都强于脑至心的影响。这些发现表明,心脏节律在调节神经振荡中起着因果作用,这可能对心理健康有重要影响。

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